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首页> 外文期刊>Journal of Materials Engineering and Performance >Effect of Processing Parameters on the Mechanical Properties of Interstitial Free Steel Subjected to Friction Stir Processing
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Effect of Processing Parameters on the Mechanical Properties of Interstitial Free Steel Subjected to Friction Stir Processing

机译:工艺参数对间隙搅拌下间隙自由钢力学性能的影响

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摘要

In the present work, the effect of friction stir processing parameters on the mechanical properties of an interstitial free steel was studied. Four rotating speeds (800, 1250, 1600, 2000 rpm) and two traverse speeds (31.5 and 63 mm/min) were employed. On both sides of specimens, a nanograin layer with the thickness and nanograins of 150 μm and 50-100 nm were formed, respectively. For the specimen processed at rotating speed of 1600 rpm and the traverse speed of 31.5 mm/min, the maximum strength was achieved, which was about 80% increase in the strength comparing to that of base material. For constant traverse speed, the increase in the rotation speed from 800 to 1600 rpm led to a decrease in uniform and total elongation of friction stir processed samples. By contrast, when the rotating speed exceeded 1600 rpm, the uniform and total elongation was increased again, while there was a drop in strength. The results of microhardness indicate more than threefold increase in the hardness of the stirred zone comparing to that of base material.
机译:在目前的工作中,研究了搅拌摩擦工艺参数对无间隙钢的力学性能的影响。采用四种转速(800、1250、1600、2000 rpm)和两种横向速度(31.5和63 mm / min)。在试样的两侧,分别形成厚度为150μm和50-100nm的纳米颗粒层。对于以1600 rpm的旋转速度和31.5 mm / min的横向速度处理的样品,获得了最大强度,与基础材料相比,强度增加了约80%。对于恒定的移动速度,转速从800 rpm增加到1600 rpm导致搅拌摩擦处理的样品的均匀和总伸长率降低。相反,当转速超过1600rpm时,均匀和总伸长率再次增加,而强度下降。显微硬度的结果表明,与基础材料相比,搅拌区的硬度增加了三倍以上。

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